Grosell M, Mager E M, Williams C, Taylor J R
RSMAS, University of Miami, 4600 Rickenbacker Causeway, Miami, FL 33149, USA.
J Exp Biol. 2009 Jun;212(Pt 11):1684-96. doi: 10.1242/jeb.027730.
Anion exchange contributes significantly to intestinal Cl(-) absorption in marine teleost fish and is thus vital for successful osmoregulation. This anion exchange process leads to high luminal HCO(3)(-) concentrations (up to approximately 100 mmol l(-1)) and high pH and results in the formation of CaCO(3) precipitates in the intestinal lumen. Recent advances in our understanding of the transport processes involved in intestinal anion exchange in marine teleost fish include the demonstration of a role for the H(+)-pump (V-ATPase) in apical H(+) extrusion and the presence of an electrogenic (nHCO(3)(-)/Cl(-)) exchange protein (SLC26a6). The H(+)-V-ATPase defends against cellular acidification, which might otherwise occur as a consequence of the high rates of base secretion. In addition, apical H(+) extrusion probably maintains lower HCO(3)(-) concentrations in the unstirred layer at the apical surface than in the bulk luminal fluids and thus facilitates continued anion exchange. Furthermore, H(+)-V-ATPase activity hyperpolarizes the apical membrane potential that provides the driving force for apical electrogenic nHCO(3)(-)/Cl(-) exchange, which appears to occur against both Cl(-) and HCO(3)(-) electrochemical gradients. We propose that a similar coupling between apical H(+) extrusion and nHCO(3)(-)/Cl(-) exchange accounts for Cl(-) uptake in freshwater fish and amphibians against very steep Cl(-) gradients.
阴离子交换对海水硬骨鱼类肠道氯离子(Cl⁻)的吸收起着重要作用,因此对于成功的渗透调节至关重要。这种阴离子交换过程会导致肠腔中碳酸氢根离子(HCO₃⁻)浓度升高(高达约100 mmol/L)且pH值升高,并在肠腔中形成碳酸钙沉淀。我们对海水硬骨鱼类肠道阴离子交换所涉及的转运过程的最新认识进展包括:证明了氢离子泵(V-ATP酶)在顶端氢离子排出中的作用以及一种电中性的(nHCO₃⁻/Cl⁻)交换蛋白(SLC26a6)的存在。氢离子-V-ATP酶可防止细胞酸化,否则细胞酸化可能会由于高碱基分泌速率而发生。此外,顶端氢离子排出可能会使顶端表面未搅动层中的碳酸氢根离子浓度低于肠腔总体液中的浓度,从而促进持续的阴离子交换。此外,氢离子-V-ATP酶的活性使顶端膜电位超极化,为顶端电中性的nHCO₃⁻/Cl⁻交换提供驱动力,这种交换似乎是逆着氯离子和碳酸氢根离子的电化学梯度进行的。我们提出,顶端氢离子排出与nHCO₃⁻/Cl⁻交换之间的类似耦合解释了淡水鱼和两栖动物逆着非常陡峭的氯离子梯度吸收氯离子的现象。